泊马度胺
来那度胺
小脑
化学
造血
干扰素
计算生物学
安全概况
癌症研究
多发性骨髓瘤
配体(生物化学)
体内
药物发现
细胞生物学
造血干细胞
药理学
体外
干细胞
蛋白质降解
体外毒理学
BRD4
作者
Monica C. Rodrigo-Brenni,Jasper C. Komen,Ghaith M. Hamza,Natacha Bohin,Tomas Adomavicius,Angelo Andres,Stefan Blaho,Ulf Börjesson,Gavin W. Collie,Gian Marco De Donatis,Frederik Eisele,Ning Gao,Andrea Gohlke,Christoph Grebner,Frida Gustafsson,Andreas Hock,Cecilia Kankkonen,Praveen Kumar,Emilyanne Leonard,Xin Li
标识
DOI:10.1038/s41467-026-70663-1
摘要
Immunomodulatory imide drugs (IMiDs) like lenalidomide and pomalidomide are effective in treating multiple myeloma (MM) but pose hematotoxicity risks by degrading neosubstrates Ikaros (IKZF1) and Aiolos (IKZF3). When these IMiD scaffolds are integrated into proteolysis targeting chimeras (PROTACs), they can inadvertently lead to the degradation of these neosubstrates alongside the intended protein of interest (POI), raising safety concerns. This study profiles existing PROTACs and reveals instances of undesired degradation of IMiD-associated neosubstrates. We have developed in vitro hematopoietic assays to scrutinize the IMiD effects and describe the mechanistic insights on cell differentiation rewiring towards megakaryocytes together with an activation of the interferon response that is phenocopied by an Ikaros knock-out model. Moreover, we have identified a CRBN ligand that mitigates these safety liabilities and can be effectively incorporated into PROTACs. This advancement provides a promising path toward safer preclinical development of PROTACs, especially as the field expands into chronic disease treatments beyond oncology.
科研通智能强力驱动
Strongly Powered by AbleSci AI